Czubak Karol, Taylor Katarzyna, Piasecka Agnieszka, Sobczak Krzysztof, Kozlowska Katarzyna, Philips Anna, Sedehizadeh Saam, Brook J David, Wojciechowska Marzena, Kozlowski Piotr
Department of Molecular Genetics, Institute of Bioorganic Chemistry, Polish Academy of Sciences, Poznan, Poland.
Laboratory of Gene Therapy, Department of Gene Expression, Institute of Molecular Biology and Biotechnology, Faculty of Biology, Adam Mickiewicz University, Poznan, Poland.
Front Genet. 2019 Jul 18;10:649. doi: 10.3389/fgene.2019.00649. eCollection 2019.
Splicing aberrations induced as a consequence of the sequestration of muscleblind-like splicing factors on the dystrophia myotonica protein kinase transcript, which contains expanded CUG repeats, present a major pathomechanism of myotonic dystrophy type 1 (DM1). As muscleblind-like factors may also be important factors involved in the biogenesis of circular RNAs (circRNAs), we hypothesized that the level of circRNAs would be decreased in DM1. To test this hypothesis, we selected 20 well-validated circRNAs and analyzed their levels in several experimental systems (e.g., cell lines, DM muscle tissues, and a mouse model of DM1) using droplet digital PCR assays. We also explored the global level of circRNAs using two RNA-Seq datasets of DM1 muscle samples. Contrary to our original hypothesis, our results consistently showed a global increase in circRNA levels in DM1, and we identified numerous circRNAs that were increased in DM1. We also identified many genes (including muscle-specific genes) giving rise to numerous (>10) circRNAs. Thus, this study is the first to show an increase in global circRNA levels in DM1. We also provided preliminary results showing the association of circRNA level with muscle weakness and alternative splicing changes that are biomarkers of DM1 severity.
在强直性肌营养不良蛋白激酶转录本上,由于肌肉盲样剪接因子被隔离而导致的剪接异常是1型强直性肌营养不良(DM1)的主要发病机制,该转录本含有扩展的CUG重复序列。由于肌肉盲样因子可能也是参与环状RNA(circRNA)生物合成的重要因子,我们推测DM1中circRNA的水平会降低。为了验证这一假设,我们选择了20个经过充分验证的circRNA,并使用液滴数字PCR分析在几个实验系统(如细胞系、DM肌肉组织和DM1小鼠模型)中分析它们的水平。我们还使用两个DM1肌肉样本的RNA-Seq数据集探索了circRNA的整体水平。与我们最初的假设相反,我们的结果一致显示DM1中circRNA水平整体增加,并且我们鉴定出许多在DM1中增加的circRNA。我们还鉴定出许多产生大量(>10个)circRNA的基因(包括肌肉特异性基因)。因此,本研究首次表明DM1中circRNA的整体水平增加。我们还提供了初步结果,显示circRNA水平与肌肉无力以及作为DM1严重程度生物标志物的可变剪接变化之间的关联。